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Report generator reliability 2010
[CRI8541123610]
US$122.95
Description Table of Content Chinastatistics.net - Your China Statistical Database
Publisher : Electric Reliability Management Center
Published Date : 4/2011
Frequency : Annually
Language : Chinese
Weight : 1.10kg
Availability : Usually ship within 48 hours
Book Type : Report
Estimated Shipping Time

First, the 2010 thermal power 100MW, 40MW hydropower plant operation and reliability more comprehensive index Table 1.1 2010 and over 100MW thermal power plant operation reliability of the composite indicator (2) Table 1.2 Hydropower 40MW in 2010 and over the reliability of composite indicator unit operation (6) Table 1.3 2010, more than 100MW thermal power generating units at five power generation groups classified the reliability of the overall target company (7) Table 1.4 Hydropower 40MW or more units in 2010 by five major power generation company classified the reliability of the composite indicator (9) Table 1.5 2010 100-1000MW thermal power generating units by independent power producers (some of) the reliability of classification of composite indicators (11) 2006-2010 Table 1.6 the main level of thermal power capacity of reliability over the years compared (13) Table 1.7 and above 2006-2010 40MW hydropower unit reliability over the years compared (15) Second, the 2010 thermal power 100MW, 40MW and above water units classified according to the manufacturer's operating reliability Table 2.1 2010 level units of thermal power capacity by the major manufacturers of reliability index classification (17) Table 2.2 Hydropower 40MW and above the 2010 shaft, Francis units classified according to the manufacturer's operating reliability (25) Table 2.3 2010 and over 200MW thermal power generating units at furnace, mechanical, electrical manufacturers to run the classification reliability (28) III, 2010, thermal power 100MW, 40MW and above hydropower and nuclear power units to run a single reliability Table 3.1 2010 100-199MW thermal power plant operation reliability (45) Table 3.2 2010 200-299MW thermal power plant operation reliability (57) Table 3.3 2010 300-399MW thermal power plant operation reliability (68) Table 3.4 2010 500-1000MW thermal power plant operation reliability (95) Table 3.5 2010 and over 100MW of thermal power reliability index of a gas turbine (109) Table 3.6 Hydropower 40MW and over 2010 units operating reliability axial (113) Table 3.7 Hydropower 40MW and over 2010 units operating reliability of Francis (120) Table 3.8 and above in 2010 40MW pumped storage hydropower plant operation reliability of the indicators (141) Nuclear power plants in 2010 Table 3.9 Reliability Indicators (145) IV, 2009, new investment in thermal power units of Reliability Indicators 2010 Table 4 2009 new investment in thermal power production Reliability Indicators 2010 (147) V. 2010 thermal power 100MW, 40MW and above water unit outage and non-plan non-plan before the fifth class of parts falling output classification Table 5.1 2010 100-120MW thermal power generating units unplanned outage reduction efforts with non-project components before the fifth class classification (153) Table 5.2 2010 125-138MW thermal power generating units unplanned outage reduction efforts with non-project components before the fifth class classification (154) Table 5-3 2010 140-165MW thermal power generating units unplanned outage reduction efforts with non-project components before the fifth class classification (155) Table 5.4 2010 200-250MW thermal power generating units unplanned outage reduction efforts with non-project components before the fifth class classification (156) Table 5.5 2010 300-328.5MW units of thermal power outage and non-plan non-plan before the fifth class of parts falling output classification (157) Table 5.6 2010 330-335MW thermal power generating units unplanned outage reduction efforts with non-project components before the fifth class classification (158) Table 5.7 2010 350-385MW thermal power generating units unplanned outage reduction efforts with non-project components before the fifth class classification (159) Table 5.8 500MW thermal power generating units in 2010 Unplanned outage reduction efforts with non-project components before the fifth class classification (160) Table 5.9 2010 600-650MW thermal power generating units unplanned outage reduction efforts with non-project components before the fifth class classification (161) Table 5.10 2010 660-700MW thermal power unit in unplanned outage reduction efforts with non-project components before the fifth class classification (162) Table 5.11 800MW thermal power generating units in 2010 Unplanned outage reduction efforts with non-project components before the fifth class classification (163) Table 5.12 2010 900-1000MW of thermal power units unplanned outage reduction efforts with non-project components before the fifth class classification (164) Table 5.13 and above in 2010 Hydropower 40MW unplanned outage axial unit reduction efforts with non-project components before the fifth class classification (165) Table 5,14 40MW in 2010 and over water mixed unit outage and non-plan non-plan before the fifth class of parts falling output classification (166) Table 5.15 and above in 2010 Hydropower 40MW pumped storage unit in unplanned outage reduction efforts with non-project components before the fifth class classification (167) June, 2010 the thermal power 100MW, 40MW and above water unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification Table 6.1 2010 100-120MW thermal power unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification (169) Table 6.2 2010 125-138MW thermal power unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification (170) Table 6.3 2010 140-165MW thermal power unit in unplanned outage reduction efforts with non-project responsibilities before the fifth class classification (171) Table 6.4 2010 200-250MW thermal power unit in unplanned outage reduction efforts with non-project responsibilities before the fifth class classification (172) Table 6.5 2010 300-328.5MW units of thermal power outage and non-plan non-plan before the fifth class of the responsibility falling output classification (173) Table 6.6 2010 330-335MW thermal power unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification (174) Table 6.7 2010 350-385MW thermal power unit in unplanned outage reduction efforts with non-project responsibilities before the fifth class classification (175) Table 6.8 500MW thermal power generating units in 2010 outage and non-plan non-plan before the fifth class of the responsibility falling output classification (176) Table 6.9 2010 600-650MW thermal power unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification (177) Table 6.10 2010 660-700MW thermal power unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification (178) Table 6.11 800MW thermal power generating units in 2010 outage and non-plan non-plan before the fifth class of the responsibility falling output classification (179) Table 6.12 2010 900-1000MW units of thermal power outage and non-plan non-plan before the fifth class of the responsibility falling output classification (180) Table 6.13 and above in 2010 Hydropower 40MW axial unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification (181) Table 6.14 and above in 2010 Francis 40MW hydropower unit outage and non-plan non-plan before the fifth class of the responsibility falling output classification (182) Table 6.15 and above in 2010 Hydropower 40MW pumped storage unit in unplanned outage reduction efforts with non-project responsibilities before the fifth class classification (183)
Report generator reliability 2010

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